A crystal lattice structure whose repeating nodes read as a coordinate grid, echoing a patent-backed coordinate system extended into an applied information system

The Coordinate Family & Functional Information Systems

Course overview

This course groups the two most advanced, most applied pieces of the ontology. First, the patent portfolio: roughly 22 granted US patents built directly on functional coordinates, measuring proximity and trajectory between functional locations, and sitting on the Systems Syntax data model underneath all three. Second, Functional Information Systems (FIS) — the commercial extension that turns the theory into applied technology, built for a practitioner audience running functional queries and functional maps rather than a reader working through the vocabulary term by term.

Read this after Resource Loci & Classification, once the classification system itself is established and the question becomes what’s actually protectable and sellable on top of it.

Key themes

Functional coordinate systems and the patent family behind them, measuring functional proximity and trajectory between coordinates, the systems-syntax data model underneath all of it, and how Functional Information Systems turns the whole apparatus into an applied, queryable coordinate system — FIS coordinates, functional markers, the production system model, functional query, and functional maps.

Intended audience

Readers who finished Resource Loci & Classification and want the strategic and commercial layer above it — what’s patented, what’s been built on top of the patents, and who the applied product is actually for.

In this course

Ten articles, read in order.

01 · Pillar

The Coordinate Family & the Patent Portfolio

The patent-linked backbone underneath the Locus Model’s public vocabulary, and the roughly 22 granted US patents behind it.

Functional Coordinate System · Functional Proximity

02 · Spoke

Functional Proximity

The measured distance between two functional locations, enabling comparison across otherwise unrelated entities.

Functional Proximity

03 · Spoke

Functional Trajectory

The computed path an element traces through functional locations over time.

Functional Trajectory

04 · Spoke

Systems Syntax

The logical data model on which a representation of a functional system is constructed.

Systems Syntax

05 · Pillar

Functional Information Systems

Where the theory becomes applied technology: a system that augments economic and financial data with standardized functional markers.

Functional Information System

06 · Spoke

FIS Coordinates

The applied coordinate values assigned to each business, job, and product.

Functional Information System

07 · Spoke

Locus Functional Markers

The coded functional references derived from the Production System Model.

Locus Functional Markers

08 · Spoke

Production System Model

Identifies the parts and processes necessary to produce a product, the layer beneath Locus Functional Markers.

Production System Model

09 · Spoke

Functional Query

Retrieval by functional coordinate rather than keyword or code.

Functional Query

10 · Spoke

Functional Maps

A registered mark for maps built on the Locus Model, powering financial analysis, classification, research, and analytics.

Functional Maps

Lexicon terms in this course

Each article above is a deep dive on one or more entries from the Lexicon. This course’s core terms:

Continue the reading path

This is the sixth of seven courses tracing the full lexicon. Come from Resource Loci & Classification if you haven’t yet, and continue to Beyond the Theory, the final course in the series. For the full term-by-term specification, see the Lexicon.

Only serious, qualified inquiries. For speaking, consulting, or collaboration on any of these strands, describe the problem you are trying to solve.

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